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探究与DNA结合的活化SgrAI的连续寡聚体。

Probing the run-on oligomer of activated SgrAI bound to DNA.

作者信息

Shah Santosh, Sanchez Jonathan, Stewart Andrew, Piperakis Michael M, Cosstick Richard, Nichols Claire, Park Chad K, Ma Xin, Wysocki Vicki, Bitinaite Jurate, Horton Nancy C

机构信息

Department of Chemistry and Biochemistry, University of Arizona, Tucson, AZ, 85721, United States of America.

Department of Chemistry and Biochemistry, University of Arizona, Tucson, AZ, 85721, United States of America; Genetics Graduate Program, University of Arizona, Tucson, AZ 85721, United States of America.

出版信息

PLoS One. 2015 Apr 16;10(4):e0124783. doi: 10.1371/journal.pone.0124783. eCollection 2015.

Abstract

SgrAI is a type II restriction endonuclease with an unusual mechanism of activation involving run-on oligomerization. The run-on oligomer is formed from complexes of SgrAI bound to DNA containing its 8 bp primary recognition sequence (uncleaved or cleaved), and also binds (and thereby activates for DNA cleavage) complexes of SgrAI bound to secondary site DNA sequences which contain a single base substitution in either the 1st/8th or the 2nd/7th position of the primary recognition sequence. This modulation of enzyme activity via run-on oligomerization is a newly appreciated phenomenon that has been shown for a small but increasing number of enzymes. One outstanding question regarding the mechanistic model for SgrAI is whether or not the activating primary site DNA must be cleaved by SgrAI prior to inducing activation. Herein we show that an uncleavable primary site DNA containing a 3'-S-phosphorothiolate is in fact able to induce activation. In addition, we now show that cleavage of secondary site DNA can be activated to nearly the same degree as primary, provided a sufficient number of flanking base pairs are present. We also show differences in activation and cleavage of the two types of secondary site, and that effects of selected single site substitutions in SgrAI, as well as measured collisional cross-sections from previous work, are consistent with the cryo-electron microscopy model for the run-on activated oligomer of SgrAI bound to DNA.

摘要

SgrAI是一种II型限制性内切酶,具有涉及连续寡聚化的异常激活机制。连续寡聚体由与包含其8个碱基对的一级识别序列(未切割或已切割)的DNA结合的SgrAI复合物形成,并且还与与二级位点DNA序列结合的SgrAI复合物结合(从而激活DNA切割),这些二级位点DNA序列在一级识别序列的第1/8或第2/7位置含有单个碱基取代。通过连续寡聚化对酶活性的这种调节是一种新认识到的现象,已在少数但数量不断增加的酶中得到证实。关于SgrAI机制模型的一个突出问题是,激活的一级位点DNA在诱导激活之前是否必须被SgrAI切割。在此我们表明,含有3'-S-硫代磷酸酯的不可切割的一级位点DNA实际上能够诱导激活。此外,我们现在表明,只要存在足够数量的侧翼碱基对,二级位点DNA的切割可以被激活到与一级位点几乎相同的程度。我们还展示了两种类型二级位点在激活和切割方面的差异,并且SgrAI中选定的单一位点取代的影响以及先前工作中测量的碰撞横截面与结合DNA的SgrAI连续激活寡聚体的冷冻电子显微镜模型一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/063f/4399878/2284f3da31c1/pone.0124783.g001.jpg

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